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消化酶谱揭示了摄食和饥饿状态下的刺龙虾(Jasus edwardsii)叶状幼体的消化能力和潜在能量来源。

Digestive enzyme profiles reveal digestive capacity and potential energy sources in fed and starved spiny lobster (Jasus edwardsii) phyllosoma larvae.

作者信息

Johnston Danielle J, Ritar Arthur J, Thomas Craig W

机构信息

School of Aquaculture, Tasmanian Aquaculture and Fisheries Institute, University of Tasmania, Locked Bag 1-370, Launceston, Tasmania 7250, Australia.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2004 Jun;138(2):137-44. doi: 10.1016/j.cbpc.2004.02.013.

Abstract

The impact of starvation on the digestive enzyme (protease, trypsin, lipase and amylase) activities of Stage I and IV Jasus edwardsii phyllosoma larvae was used to identify the nutrients metabolised or conserved during food deprivation, highlighting the most critical energy reserves. Protease activities increased significantly in both Stages I and IV phyllosoma, suggesting that protein catabolism provided energy during food deprivation. Lipase activity decreased significantly in starved Stages I and IV larvae indicating that lipid may be spared for fuelling later developmental moults. The use of protein, while sparing lipid, may provide immediate energy but not at the expense of long-term lipid energy stores which are known to be important during their lengthy larval phase. The preferential use of protein during short-term periods of starvation suggests that particular attention must be given to providing sufficient protein in artificial diets at all times. Amylase activity in starved Stage I larvae was lower than in fed animals, suggesting that the starved animals are not gaining sufficient carbohydrate. However, amylase activity was similar in fed and starved Stage IV larvae, possibly due to the catabolism of accumulated glycogen stores that were not sufficiently developed in Stage I animals.

摘要

饥饿对爱德华岩龙虾叶状幼体Ⅰ期和Ⅳ期消化酶(蛋白酶、胰蛋白酶、脂肪酶和淀粉酶)活性的影响,用于确定食物缺乏期间代谢或保存的营养物质,突出最关键的能量储备。Ⅰ期和Ⅳ期叶状幼体的蛋白酶活性均显著增加,这表明在食物缺乏期间蛋白质分解代谢提供了能量。饥饿的Ⅰ期和Ⅳ期幼体的脂肪酶活性显著降低,这表明脂质可能被留存下来用于为后期发育蜕皮提供能量。利用蛋白质,同时留存脂质,可以提供即时能量,但不以长期脂质能量储备为代价,而长期脂质能量储备在其漫长的幼体阶段是很重要的。在短期饥饿期间优先利用蛋白质表明,必须始终特别注意在人工饲料中提供足够的蛋白质。饥饿的Ⅰ期幼体的淀粉酶活性低于喂食的动物,这表明饥饿的动物没有获得足够的碳水化合物。然而,喂食和饥饿的Ⅳ期幼体的淀粉酶活性相似,这可能是由于Ⅰ期动物中积累的糖原储备未充分发育,糖原储备发生了分解代谢。

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